Literature DB >> 8179008

Secretin activates Cl- channels in bile duct epithelial cells through a cAMP-dependent mechanism.

J M McGill1, S Basavappa, T W Gettys, J G Fitz.   

Abstract

Using patch-clamp recording techniques, we assessed the effects of secretin on membrane ion channel activity in isolated rat bile duct epithelial cells. In the whole cell configuration, secretin activated an inward membrane current at -40 mV in 6 of 13 cells, and increased current density from 17 +/- 8 to 98 +/- 33 pA/pF. Secretin-stimulated currents reversed near the equilibrium potential for Cl- and exhibited a linear current-voltage relationship. In the cell-attached configuration, secretin activated low-conductance channels in 73% (11 of 15) of patches. Similar channels were activated by forskolin, suggesting that adenosine 3',5'-cyclic monophosphate (cAMP) is involved as a second messenger. At the resting membrane potential, channels carried inward membrane current and had a slope conductance of 10 +/- 1 pS. In excised patches, addition of purified catalytic subunit of cAMP-dependent protein kinase (protein kinase A) to the cytoplasmic surface activated channels in four of six attempts. With equal Cl- concentrations in bath and pipette, channels had a linear slope conductance of 13 +/- 2 pS and currents reversed near 0 mV. Partial substitution of pipette Cl- with gluconate caused a shift in reversal potential in the direction anticipated for a Cl(-)-selective channel (gluconate to Cl- permeability ratio of 0.21 +/- 0.05, n = 4). Thus in bile duct epithelial cells, exposure to secretin activates low-conductance, Cl(-)-selective channels, probably through a cAMP-dependent mechanism. This likely contributes to secretin-dependent choleresis.

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Year:  1994        PMID: 8179008     DOI: 10.1152/ajpgi.1994.266.4.G731

Source DB:  PubMed          Journal:  Am J Physiol        ISSN: 0002-9513


  17 in total

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Review 2.  Physiology of cholangiocytes.

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3.  Identification and functional characterization of TMEM16A, a Ca2+-activated Cl- channel activated by extracellular nucleotides, in biliary epithelium.

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Journal:  J Biol Chem       Date:  2010-11-01       Impact factor: 5.157

4.  Regulation of transforming growth factor beta-induced responses by protein kinase A in pancreatic acinar cells.

Authors:  Huibin Yang; Cheong J Lee; Lizhi Zhang; Maria Dolors Sans; Diane M Simeone
Journal:  Am J Physiol Gastrointest Liver Physiol       Date:  2008-05-08       Impact factor: 4.052

Review 5.  Regulators of Cholangiocyte Proliferation.

Authors:  Chad Hall; Keisaku Sato; Nan Wu; Tianhao Zhou; Konstantina Kyritsi; Fanyin Meng; Shannon Glaser; Gianfranco Alpini
Journal:  Gene Expr       Date:  2016-07-12

Review 6.  Cholangiocyte anion exchange and biliary bicarbonate excretion.

Authors:  Jesús-M Banales; Jesus Prieto; Juan-F Medina
Journal:  World J Gastroenterol       Date:  2006-06-14       Impact factor: 5.742

7.  Secretin facilitates GABA transmission in the cerebellum.

Authors:  W H Yung; P S Leung; S S Ng; J Zhang; S C Chan; B K Chow
Journal:  J Neurosci       Date:  2001-09-15       Impact factor: 6.167

8.  The Secretin/Secretin Receptor Axis Modulates Ductular Reaction and Liver Fibrosis through Changes in Transforming Growth Factor-β1-Mediated Biliary Senescence.

Authors:  Nan Wu; Fanyin Meng; Tianhao Zhou; Julie Venter; Thao K Giang; Konstantina Kyritsi; Chaodong Wu; Domenico Alvaro; Paolo Onori; Romina Mancinelli; Eugenio Gaudio; Heather Francis; Gianfranco Alpini; Shannon Glaser; Antonio Franchitto
Journal:  Am J Pathol       Date:  2018-07-21       Impact factor: 4.307

Review 9.  Cholangiocyte proliferation and liver fibrosis.

Authors:  Shannon S Glaser; Eugenio Gaudio; Tim Miller; Domenico Alvaro; Gianfranco Alpini
Journal:  Expert Rev Mol Med       Date:  2009-02-25       Impact factor: 5.600

Review 10.  Secretin as a neuropeptide.

Authors:  Samuel S M Ng; W H Yung; Billy K C Chow
Journal:  Mol Neurobiol       Date:  2002-08       Impact factor: 5.590

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